This paper investigates how to develop a learning-based demand response approach for electric water heater in a smart home that can minimize the energy cost of the water heater while meeting the comfort requirements of energy consumers. First, a learning-based, data-driven model of an electric water heater is developed by using a nonlinear autoregressive network with external input (NARX) using neural network. The model is updated daily so that it can more accurately capture the actual thermal dynamic characteristics of the water heater especially in real-life conditions. Then, an optimization problem, based on the NARX water heater model, is formulated to optimize energy management of the water heater in a day-ahead, dynamic electricity pr...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
Summarization: Demand Response (DR) is a fundamental aspect of the smart grid concept, as it refers ...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Electric water heaters represent 14% of the electricity consumption in residential buildings. An ave...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
Home Energy Management System creates the scopes to small household electrical appliances users to p...
This is the author accepted manuscript. The final version is available on open access from IEEE via ...
The household small electrical appliances can participate in demand response events to support the l...
This work presents an approach to automatically adapt domestic hot water heaters to to individual hu...
Home Energy Management System creates the scopes to small household electrical appliances users to p...
In this paper, two techniques based on Q-learning and Action Dependent Heuristic Dynamic Programming...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
Summarization: Demand Response (DR) is a fundamental aspect of the smart grid concept, as it refers ...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Demand response is an effective way for ensuring safety and stabilization of power grid by maintaini...
Electric water heaters represent 14% of the electricity consumption in residential buildings. An ave...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
Home Energy Management System creates the scopes to small household electrical appliances users to p...
This is the author accepted manuscript. The final version is available on open access from IEEE via ...
The household small electrical appliances can participate in demand response events to support the l...
This work presents an approach to automatically adapt domestic hot water heaters to to individual hu...
Home Energy Management System creates the scopes to small household electrical appliances users to p...
In this paper, two techniques based on Q-learning and Action Dependent Heuristic Dynamic Programming...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
The electricity grid is currently transforming and becoming more and more decentralised. Green energ...
Summarization: Demand Response (DR) is a fundamental aspect of the smart grid concept, as it refers ...